Search results for "Collision"

showing 10 items of 908 documents

Self-assembly and rheology of dipolar colloids in simple shear studied using multi-particle collision dynamics.

2017

Magnetic nanoparticles in a colloidal solution self-assemble in various aligned structures, which has a profound influence on the flow behavior. However, the precise role of the microstructure in the development of the rheological response has not been reliably quantified. We investigate the self-assembly of dipolar colloids in simple shear using hybrid molecular dynamics and multi-particle collision dynamics simulations with explicit coarse-grained hydrodynamics, conduct simulated rheometric studies and apply micromechanical models to produce master curves, showing evidence of the universality of the structural behavior governed by the competition between the bonding (dipolar) and erosive …

ChemistryPhysical system02 engineering and technologyGeneral ChemistryMechanics021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesUniversality (dynamical systems)Simple shearDipoleMolecular dynamicsRheologyComputational chemistry0103 physical sciencesMagnetic nanoparticlesMulti-particle collision dynamics010306 general physics0210 nano-technologySoft matter
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Elastohydrodynamic Collision of Two Spheres Allowing Slip on Their Surfaces.

2000

Our goal is to study theoretically the effect of deformation on the collision of two solid spheres allowing slip on their surfaces. The deformed shape of the solid surface is determined via an asymptotic technique assuming that deformation is small compared with the separation between the surfaces. It has previously been shown that the slippage makes collision possible even without any surface attractive force. Here we demonstrate that even a small amount of deformation can preclude spheres from coagulation. Copyright 2000 Academic Press.

ChemistrySolid surfaceSlip (materials science)CollisionSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsBiomaterialsColloid and Surface ChemistryClassical mechanicsLubricationNewtonian fluidSurface structureSPHERESSlippageJournal of colloid and interface science
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Performance of jet substructure techniques for large-$R$ jets in proton-proton collisions at $\sqrt{s}$ = 7 TeV using the ATLAS detector

2013

This paper presents the application of a variety of techniques to study jet substructure. The performance of various modified jet algorithms, or jet grooming techniques, for several jet types and event topologies is investigated for jets with transverse momentum larger than 300 GeV. Properties of jets subjected to the mass-drop filtering, trimming, and pruning algorithms are found to have a reduced sensitivity to multiple proton-proton interactions, are more stable at high luminosity and improve the physics potential of searches for heavy boosted objects. Studies of the expected discrimination power of jet mass and jet substructure observables in searches for new physics are also presented.…

Ciencias FísicasPhysics beyond the Standard ModelHadronMonte Carlo method01 natural sciencesHigh Energy Physics - Experiment//purl.org/becyt/ford/1 [https]High Energy Physics - Experiment (hep-ex)Jets[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]Invariant massNuclear ExperimentHADRONIC JEThadron-hadron scatteringQCPhysicsLarge Hadron ColliderAtlas (topology)Settore FIS/01 - Fisica SperimentaleObservableATLASPhysical SciencesComputingMethodologies_DOCUMENTANDTEXTPROCESSINGproton–proton collisionLHCCIENCIAS NATURALES Y EXACTASParticle Physics - ExperimentParticle physicsNuclear and High Energy PhysicsCiências Naturais::Ciências Físicas530 PhysicsAstrophysics::High Energy Astrophysical Phenomena:Ciências Físicas [Ciências Naturais]FOS: Physical sciencesddc:500.2530Nuclear physics0103 physical sciencesFysikddc:530High Energy Physics010306 general physicsCiencias ExactasScience & TechnologyHadron-Hadron ScatteringATLAS detector010308 nuclear & particles physicsFísica//purl.org/becyt/ford/1.3 [https]AstronomíaHADRON-HADRON COLLISIONSExperimental High Energy PhysicsSubstructureHigh Energy Physics::Experiment
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Wind tunnel study on the size distribution of droplets after collision induced breakup of levitating water drops

2018

Abstract Wind tunnel experiments on collisions between drop pairs of 2.5 and 0.5 mm diameter have been performed and the coalescence and breakup events have been recorded by a high-speed digital camera. From the comprehensive analysis of the captured images, the most important parameters utilized in numerical models, such as coalescence efficiency, breakup type, number of fragments and fragment size distribution after breakup were determined. The experimentally obtained parameters have been compared to parameterizations based on earlier laboratory studies of Low and List, and on direct numerical simulations. A very good agreement between experimental results and parameterizations has been f…

Coalescence (physics)PhysicsAtmospheric Science010504 meteorology & atmospheric sciencesDrop (liquid)Direct numerical simulationMechanicsBreakupCollision01 natural sciences010305 fluids & plasmasFragment size0103 physical sciencesLevitationNuclear Experiment0105 earth and related environmental sciencesWind tunnelAtmospheric Research
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Statistical mechanics of fullerene coalescence growth

2006

Among the different carbon allotropes fullerenes are exceptionally intriguing for their spheroidal topology out of pentagons and hexagons. However, the dominant formation mode is still ambiguous. Here, we analyze the fullerene formation process by the statistical analysis of fullerene sizes produced in a laser-induced microplasma finding that a simple two-parameter lognormal distribution describes impressively well the cluster frequencies under various conditions. Our findings clearly reveal coalescent growth following a classical collision dynamics and disagree with several earlier assumptions.

Coalescence (physics)PhysicsCollision dynamicsClassical mechanicsFullereneChemical physicsLog-normal distributionStatistical analysisStatistical mechanicsCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsCoalescent theoryPhysical Review B
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Cloud Particle Interactions

2010

In Chapter 10, we discussed the behavior of isolated cloud particles in sorne detai1. Now we shall consider their hydrodynamic interactions, with a view to providing a quantitative assessment of the processes of particle growth by collision and coalescence, and of collisional breakup. We shall first treat the collision problem for drops of radii less than about 500 μm which, in accordance with our previous description of drop distortion in Section 10.3.2, may be regarded as rigid spheres (at least when falling in isolation). This will be followed by a discussion of the phenomena of drop coalescence and breakup. Finally, we shall consider water drop-ice crystal and ice crystal-ice crystal in…

Coalescence (physics)PhysicsLiquid water contentDrop (liquid)SPHERESAstrophysics::Earth and Planetary AstrophysicsMechanicsBreakupSnowCollisionGraupel
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An expansion–coalescence model to track gas bubble populations in magmas

2016

Abstract We propose a kinetic model that statistically describes the growth by decompression, exsolution and coalescence of a polydisperse population of gas bubbles in a silicate melt. The model is homogeneous in space and its main variable is a distribution function representing the probability to find a bubble of volume v and mass m at time t. The volume and mass growth rates are described by a simplification of the classical monodisperse bubble growth model. This simplification, which shortens computational time, removes the coupling between mass evolution and an advection–diffusion equation describing the behavior of the volatile concentration in the melt. We formulate three coalescence…

Coalescence (physics)Physicseducation.field_of_studyMaximum bubble pressure method010504 meteorology & atmospheric sciences[SDU.STU.GP]Sciences of the Universe [physics]/Earth Sciences/Geophysics [physics.geo-ph]BubblePopulationDispersityThermodynamicsMechanics010502 geochemistry & geophysicsCollision01 natural sciencesPhysics::Fluid DynamicsGeophysicsPlanarDistribution functionGeochemistry and PetrologyeducationComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciences
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Growth of Cloud Drops by Collision, Coalescence and Breakup

2010

As we have already learned from our brief historical review in Chapter 1, it has long been established that the presence of ice is not always necessary for precipitation formation in clouds. In more recent times, radar observations have confirmed this early conclusion. In such cases, the flow of water up the spectrum from small droplets to rain must occur by the process of collision and coalescence of drops. This is often referred to as the collection process, and sometimes erroneously as the ‘warm rain’ process. The latter designation is somewhat inappropriate, since collection growth also occurs in clouds colder than 0°C (Braham, 1964).

Coalescence (physics)Radar observationsMeteorologyLiquid water contentPrecipitationBreakupCollisionGeologyEarly conclusion
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Collision Avoidance Problem for an Ekranoplan

2008

Collision Avoidance EkranoplanSettore ING-IND/03 - Meccanica Del Volo
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3D Sensor-Based Obstacle Detection Comparing Octrees and Point clouds Using CUDA

2012

This paper presents adaptable methods for achieving fast collision detection using the GPU and Nvidia CUDA together with Octrees. Earlier related work have focused on serial methods, while this paper presents a parallel solution which shows that there is a great increase in time if the number of operations is large. Two different models of the environment and the industrial robot are presented, the first is Octrees at different resolutions, the second is a point cloud representation. The relative merits of the two different world model representations are shown. In particular, the experimental results show the potential of adapting the resolution of the robot and environment models to the t…

Collision DetectionGPUIndustrial Robotlcsh:Electronic computers. Computer sciencelcsh:QA75.5-76.95Modeling, Identification and Control
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